首页> 美国卫生研究院文献>other >MS26/CYP704B is required for anther and pollen wall development in bread wheat (Triticum aestivum L.) and combining mutations in all three homeologs causes male sterility
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MS26/CYP704B is required for anther and pollen wall development in bread wheat (Triticum aestivum L.) and combining mutations in all three homeologs causes male sterility

机译:面包小麦(Triticum aestivum L.)的花药和花粉壁发育需要MS26 / CYP704B并且将所有三个同源物中的突变结合会导致雄性不育

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摘要

Development of anthers and pollen represents an important aspect of the life cycle in flowering plants. Genes contributing to anther and pollen development have been widely studied in many plant species. Ms26/CYP704B genes play an important role in pollen development through biosynthesis of sporopollenin for pollen exine formation. To investigate the role of Ms26/CYP704B genes in anther and pollen development of bread wheat, mutations in the A-, B-, and D-homeologs of the putative Ms26/CYP704B gene were analyzed. Single and double homozygous mutants in any of the homeologs did not affect pollen development and male fertility. Triple homozygous mutants resulted in completely male sterile plants that were defective in pollen and anther development. Additionally, double homozygous-single heterozygous mutants were also male sterile although with varying levels of residual fertility. The fertility of these triple mutants was dependent upon the homeolog contributing the wild-type allele. Two heterologous Ms26/CYP704B genes, when transformed into a triple homozygous mutant background, completely restored male fertility, whereas a single gene was unable to restore fertility. Functional analysis of Ms26/CYP704B furthers the understanding of male fertility genes which can be utilized for the development of novel hybrid seed production systems in wheat.
机译:花药和花粉的发育代表了开花植物生命周期的重要方面。在许多植物物种中,广泛研究了促进花药和花粉发育的基因。 Ms26 / CYP704B基因通过孢粉的生物合成形成花粉外壁在花粉发育中起重要作用。为了研究Ms26 / CYP704B基因在面包小麦花药和花粉发育中的作用,分析了假定的Ms26 / CYP704B基因的A-,B-和D-同源突变。任何同源物中的单和双纯合突变体均不影响花粉发育和雄性育性。三重纯合突变体导致花粉和花药发育有缺陷的完全雄性不育植物。另外,双纯合-单杂合突变体也是雄性不育的,尽管具有不同水平的剩余繁殖力。这些三重突变体的育性取决于贡献野生型等位基因的同源基因。两个异源Ms26 / CYP704B基因,当转化成三重纯合突变体背景时,完全恢复了男性的生育力,而单个基因则无法恢复生育力。 Ms26 / CYP704B的功能分析进一步了解了可用于开发小麦新杂种种子生产系统的雄性育性基因。

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